相关实验视频
Updated: Sep 12, 2025

Stereolithographic 3D Printing with Renewable Acrylates
Published on: September 12, 2018
一种基于离合CO2衍生物的材料平台,用于3D可打印材料的调节性降解
Marco Caliari1,2, Jacopo Teotonico1, Mikel Irigoyen1
1POLYMAT and Department of Polymers and Advanced Materials: Physics, Chemistry and Technology, Faculty of Chemistry, University of the Basque Country UPV/EHU, Paseo Manuel de Lardizábal, 3, 20018 Donostia-San Sebastián, Spain.
新的共价适应性网络 (CAN) 使用N,O-乙键进行可回收和水解降解. 这些可适应的热固体提供了两种寿命终止选择,提高了聚合物的可持续性.
科学领域:
- 聚合物化学
- 材料科学
- 可持续的化学
背景情况:
- 由于使用寿命有限,耐热聚合物带来了环境挑战.
- 同价适应性网络 (CAN) 提供可回收性,但需要进一步考虑使用寿命.
- 可再生能源的可持续采购正在取得进展,但降解途径需要发展.
研究的目的:
- 开发具有增强可回收性和可降解性的新型动态键.
- 设计具有可调整的机械和降解性能的材料.
- 探索这些先进的热的3D打印应用.
主要方法:
- 通过基于二氧化碳的氧化和多的合合成N,O-乙键.
- 基质烯的光交联形成具有双重生命终结特征的CAN.
- 计算和动力学研究以了解键动力学和水溶性降解.
主要成果:
- 开发了一种新的N,O-乙动态键,表现出快速的离合交换和水解敏感性.
- 有可调节的CAN行为和水解降解的热材料已成功准备好.
- 快速光固化使得3D打印物体具有按需的水解能力.
结论:
- 开发的N,O-乙CAN为聚合物生命周期结束管理提供了双重方法.
- 这些材料为实现更可持续的耐热聚合物提供了有前途的途径.
- 这项技术适用于3D打印等先进的制造技术.
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